434 resultados para Middle–Late Permian


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The Be- and emerald deposits of the Emerald Mines region, in the central part of the Upper-Paleozoic Uralian orogen (Russia), are related to a major shear zone of N-S direction, where both Be-rich S-type granitoids (Carboniferous to Permian) and Cr-rich rocks (ophiolitic dunites and peridotes, Silurian to Devonian) are present.

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Because of its prominent role in global biomass storage, land vegetation is the most obvious biota to be investigated for records of dramatic ecologic crisis in Earth history. There is accumulating evidence that, throughout the world, sedimentary organic matter preserved in latest Permian deposits is characterized by unparalleled abundances of fungal remains, irrespective of depositional environment (marine, lacustrine, fluviatile), floral provinciality, and climatic zonation. This fungal event can be considered to reflect excessive dieback of arboreous vegetation, effecting destabilization and subsequent collapse of terrestrial ecosystems with concomitant loss of standing biomass. Such a scenario is in harmony with predictions that the Permian-Triassic ecologic crisis was triggered by the effects of severe changes in atmospheric chemistry arising from the rapid eruption of the Siberian Traps flood basalts.

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Os principais objetivos deste trabalho são: 1) estudar o material malacofaunístico de novos jazigos da região de Rio Claro - Piracicaba (SP) e de testemunhos de sondagem de Conchas (SP), referentes à porção basal da Formação Corumbataí, termo superior do Grupo Passa Dois de idade permiana e 2) determinar sua distribuição bioestratigráfica. Incluiu-se um exame parcial da provável correlação entre as faunas das bases das Formações Corumbataí (São Paulo) e Estrada Nova (Paraná) e considerações de ordem paleoecológica da malacofauna. A análise taxonômica dos bivalves da porção basal da Formação Corumbataí no Estado, forneceu apreciável diversidade genérica e específica. Duas secções colunares, uma de superfície e outra de subsuperfície são apresentadas, mostrando a distribuição bioestratigráfica dessa malacofauna. Os bivalves identificados e descritos nos diversos afloramentos foram: Angatubia cf. A. cowperesioides Mendes, Anthraconaia ? mezzalirai sp. n., Barbosaia cf. B. angulata Mendes, Barbosaia roxoi sp n., Casterella cf. C. camargoi Beurlen, Ferrazia simplicicarinata Mezzalira, Ferrazia sp., Holdhausiella elongata Mendes, Holdhausiella sp., Kidodia cf. K. stockleyi Cox, Mendesia piracicabensis gen. et sp. n., Plesiocyprinella sp., Rioclaroa cf. R. lefrevei Mezzalira. Com base na composição observada, sugeriu-se reunir as Zonas Leinzia froezi Mendes e Barbosaia angulata Mendes propostas por MEZZALIRA (1980) em uma única designada Zona Leinzia froezi - Barbosaia angulata. Os quatro níveis fossilíferos reconhecidos em subsuperfície (Poço 1-IG-Conchas) com as espécies: Casterella cf. C. gratiosa, Ferrazia cardinalis Reed e Pinzonella cf. P. illusa, a julgar pela distribuição vertical em relação à base da formação, situar-se-iam na Zona III de MEZZALIRA (1980) considerada quando definida como afossilífera. Dentre as principais conclusões, notou-se a predominância de bivalves com carenas simples e a duplas, provavelmente caráter adaptativo ao ambiente que seria provavelmente circunscrito, mixo-halino, de águas rasas, turvas e mal oxigenadas em certos intervalos.

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v.14:no.10(1966)

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The paper reports results of a study of clastic heavy mineral assemblages and geochemical features of some assemblages in several Permian-Mesozoic cherty and siliceous-clayey sequences of the Sikhote Alin Region. They are composed of pelagic and hemipelagic sediments of the Panthalassa (Paleopacific) Ocean. Four typical mineral assemblages and their environments are established. In one of the ocean segments, where the sedimentary cover formed during Late Paleozoic - Early Cretaceous, the Permian pelagic domain was characterized by the amphibole-pyroxene assemblage with heavy minerals derived from ophiolites. The Triassic-Jurassic stage was marked by development of the clinopyroxene assemblage with heavy minerals derived from intraplate alkaline volcanic complexes. Middle-Late Jurassic hemipelagic sediments host the zircon-clinopyroxene assemblage with greater role of continental environments and presence of volcanic products of the convergence zone. Another segment of the ocean accumulated red cherts and siliceous-clayey sediments during Jurassic - Early Cretaceous under influence of island-arc volcanism.

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In Cruise 13 of R/V Akademik Sergey Vavilov in the Pechora Sea, six heat flow varied from 50 to 75 mW/m**2. Deep heat flow in the Pechora Sea was calculated equal to 45 mW/m**2, which is confirmed by results of geological and geophysical studies and corresponds to Middle Baikal age of the basement. A model of structure of the lithosphere in the Pechora Sea is suggested. Total thickness of the lithosphere in the basin (190 km) determined from geothermal data agrees well with that in transition zones from the continent to the ocean. According to estimates of deep heat flow in the region obtained, thickness of the mantle (160 km), of the basaltic (15 km), and of the granitic (15 km) layers of the lithosphere were also evaluated. Temperature values at boundaries of the sedimentary layers were calculated over a geological and geophysical profile crossing the Pechora Sea basin. Temperatures obtained agree with the temperature interval of hydrocarbon generation and correspond to Permian-Triassic sedimentary sequences, which are the most productive ones in the Pechora Sea region from the point of view of oil and gas potential.

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The geological overview map was compiled from 15 geological maps (1 : 25,000) and is based on Jacobs et al. 1996. The topographic basemaps were adapted from unpublished 1:250,000 provisional topographic maps, Institut f. Angewandte Geodäsie, Frankfurt, 1983. Part of the contour lines are from Radarsat (Liu et al. 2001).